Institute of Plasma Physics, Chinese Academy of Sciences, Hefei 230031, China.
CEA, IRFM, F-13108 St Paul Les Durance, France.
Sci Adv. 2023 Jan 6;9(1):eabq5273. doi: 10.1126/sciadv.abq5273.
Mastering nuclear fusion, which is an abundant, safe, and environmentally competitive energy, is a great challenge for humanity. Tokamak represents one of the most promising paths toward controlled fusion. Obtaining a high-performance, steady-state, and long-pulse plasma regime remains a critical issue. Recently, a big breakthrough in steady-state operation was made on the Experimental Advanced Superconducting Tokamak (EAST). A steady-state plasma with a world-record pulse length of 1056 s was obtained, where the density and the divertor peak heat flux were well controlled, with no core impurity accumulation, and a new high-confinement and self-organizing regime (Super I-mode = I-mode + e-ITB) was discovered and demonstrated. These achievements contribute to the integration of fusion plasma technology and physics, which is essential to operate next-step devices.
掌握核聚变,这种丰富、安全且环境友好的能源,是人类面临的巨大挑战。托卡马克装置代表了实现受控核聚变的最有前途的途径之一。获得高性能、稳态和长脉冲等离子体运行仍是一个关键问题。最近,在实验先进超导托卡马克装置(EAST)上取得了稳态运行的重大突破。获得了一个世界记录脉冲长度为 1056 秒的稳态等离子体,其中密度和偏滤器峰值热通量得到了很好的控制,没有核心杂质积累,并发现和证明了一种新的高约束和自组织模式(Super I-mode=I-mode+e-ITB)。这些成就有助于融合等离子体技术和物理的整合,这对于操作下一步的设备至关重要。